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  • Engineering  (3)
  • 1
    Call number: M 17.90354
    Description / Table of Contents: Fiber optic sensors based on nano-films -- Lossy Mode Resonances based sensors -- Surface Plasmon Resonances based fiber optic sensors -- Plastic optical fiber biosensors -- Vapor based deposition techniques for optical fiber sensing -- Fiber optic sensors in biomedical applications -- Optical hyperspectral sensors -- Fiber optic sensors for radiation dosimetry -- Fiber optic gas sensors -- Structural health monitoring fiber optic sensors -- Distributed temperature sensors -- Respiratory diseases fiber optic based sensors -- Optical sensing based on photonic crystal structures -- Long Period grating based sensors -- Magnetic field fiber optic sensors -- Sensing at THz frecuencies -- Multimode Interference Fiber Sensors -- Fiber optics sensors based on multicore structures
    Description / Table of Contents: This book describes important recent developments in fiber optic sensor technology and examines established and emerging applications in a broad range of fields and markets, including power engineering, chemical engineering, bioengineering, biomedical engineering, and environmental monitoring. Particular attention is devoted to niche applications where fiber optic sensors are or soon will be able to compete with conventional approaches. Beyond novel methods for the sensing of traditional parameters such as strain, temperature, and pressure, a variety of new ideas and concepts are proposed and explored. The significance of the advent of extended infrared sensors is discussed, and individual chapters focus on sensing at THz frequencies and optical sensing based on photonic crystal structures. Another important topic is the resonances generated when using thin films in conjunction with optical fibers, and the enormous potential of sensors based on lossy mode resonances, surface plasmon resonances, and long-range surface exciton polaritons. Detailed attention is also paid to fiber Bragg grating sensors and multimode interference sensors. Each chapter is written by an acknowledged expert in the subject under discussion
    Type of Medium: Monograph available for loan
    Pages: VIII, 381 Seiten , Illustrationen
    ISBN: 9783319426242
    Series Statement: Smart Sensors, Measurement and Instrumentation 21
    Classification:
    Engineering
    Language: English
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  • 2
    Monograph available for loan
    Monograph available for loan
    Cham : Springer International Publishing
    Call number: M 20.93252
    Description / Table of Contents: This book is a collection of ISRM suggested methods for testing or measuring properties of rocks and rock masses both in the laboratory and in situ, as well as for monitoring the performance of rock engineering structures. The first collection (Yellow Book) has been published in 1981. In order to provide access to all the Suggested Methods in one volume, the ISRM Blue Book was published in 2007 (by the ISRM via the Turkish National Group) and contains the complete set of Suggested Methods from 1974 to 2006 inclusive. The papers in this most recent volume have been published during the last seven years in international journals, mainly in Rock Mechanics and Rock Engineering. They offer guidance for rock characterization procedures and laboratory and field testing and monitoring in rock engineering. These methods provide a definitive procedure for the identification, measurement and evaluation of one or more qualities, characteristics or properties of rocks or rock systems that produces a test result.
    Type of Medium: Monograph available for loan
    Pages: 293 Seiten , Graphiken
    Edition: 1st ed. 2015
    ISBN: 978-3-319-36132-1
    Classification:
    Engineering
    Language: English
    Note: The present and future of rock testing: highlighting the ISRM suggested methods Laboratory testing Suggested method for determination of the Schmidt Hammer rebound hardness: revised version Suggested methods for determining the dynamic strength parameters and mode-I fracture toughness of rock materials Suggested method for the determination of mode II fracture toughness Suggested method for reporting rock laboratory test data in electronic format Upgraded suggested method for determining sound velocity by ultrasonic pulse transmission technique Suggested method for determining the abrasivity of rock by the Cerchar Abrasivity test Suggested method for determining the mode I static fracture toughness using semi-circular bend specimen Suggested methods for determining the creep characteristics of rock Suggested method for laboratory determination of the shear strength of rock joints: revised version Suggested method for the needle penetration test Field testing Suggested method for rock fractures observations using a borehole digital optical televiewer Suggested method for measuring rock mass displacement using a sliding micrometer Suggested method for step-rate injection method for fracture in-situ properties (SIMFIP): Using a 3-Components Borehole Deformation Sensor Suggested Methods for rock stress estimation—Establishing a model for the in situ stress at a given site Monitoring Suggested method for monitoring rock displacements using the global positioning system (GPS) Suggested methods for rock failure criteria: general introduction Introduction to suggested methods for failure criteria Mohr–Coulomb failure criterion The Hoek–Brown failure criterion Three-dimensional failure criteria based on the Hoek–Brown criterion Drucker-Prager criterion Lade and modified Lade 3D rock strength criteria A failure criterion for rocks based on true triaxial testing A survey of 3D laser scanning techniques for application to rock mechanics and rock engineering
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  • 3
    Monograph available for loan
    Monograph available for loan
    New York, NY : Springer New York
    Call number: M 17.91078
    Description / Table of Contents: Fracture in structural materials remains a vital consideration in engineering systems, affecting the reliability of machines throughout their lives. Impressive advances in both the theoretical understanding of fracture mechanisms and practical developments that offer possibilities of control have re-shaped the subject over the past four decades. The contributors to this volume, including some of the most prominent researchers in the field, give their long-range perspectives of the research on the fracture of solids and its achievements. The subjects covered in this volume include: statistics of brittle fracture, transition of fracture from brittle to ductile, mechanics and mechanisms of ductile separation of heterogenous solids, the crack tip environment in ductile fracture, and mechanisms and mechanics of fatigue. Materials considered range from the usual structural solids to composites. The chapters include both theoretical points of view and discussions of key experiments. Contributors include: from MIT, A.S. Argon, D.M. Parks; from Cambridge, M.F. Ashby; from U.C. Santa Barbara, A.G. Evans, R. McMeeking; from Glasgow, J. Hancock; from Harvard, J.W. Hutchinson, J.R. Rice; from Sheffield, K.J. Miller; from Brown, A. Needleman; from the Ecole des Mines, A. Pineau; from U.C. Berkeley, R. O. Ritchie; and from Copenhagen, V. Tvergaard
    Type of Medium: Monograph available for loan
    Pages: 346 Seiten
    Edition: Online edition Springer eBook Collection. Engineering
    ISBN: 9781461229346 , 9781461277262 (print)
    Classification:
    Engineering
    Language: English
    Note: 1. Peierls Framework for Analysis of Dislocation Nucleation from a Crack Tip2. Advances in Characterization of Elastic-Plastic Crack-Tip Fields -- 3. Constraint and Stress State Effects in Ductile Fracture -- 4. Void Growth in Plastic Solids -- 5. Crack Blunting and Void Growth Models for Ductile Fracture -- 6. Global and Local Approaches of Fracture - Transferability of Laboratory Test Results to Components -- 7. Growth of Cracks By Intergranular Cavitation in Creep -- 8. Cracking and Fatigue in Fiber-Reinforced Metal and Ceramic Matrix Composites -- 9. Metal Fatigue - A New Perspective -- 10. Reflections on Contributions to Deformation and Fracture..
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